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Combined PI3K and MAPK inhibition synergizes to suppress PDAC
Abstract:
Oncogenic KRAS mutations are nearly ubiquitous in pancreatic ductal adenocarcinoma (PDAC), yet therapeutic attempts to target KRAS as well as its target MAPK pathway effectors have shown limited success due to the difficulty to pharmacologically target KRAS, inherent drug resistance in PDAC cells, and acquired resistance through activation of alternative mitogenic pathways such JAK-STAT and PI3K-AKT. While KRAS canonically drives the MAPK signaling pathway via RAF-MEK-ERK, it is also known to play a role in PI3K-AKT signaling. Our therapeutic study targeted the PI3K-AKT pathway with the drug Omipalisib (p110α/β/δ/γ and mTORC1/2 inhibitor) in combination with MAPK pathway targeting drug Trametinib (MEK1/2 inhibitor) or SHP099-HCL (SHP099), which is an inhibitor of the KRAS effector SHP2. Western blot analysis demonstrated that application of Trametinib or SHP099 alone selectively blocked ERK phosphorylation (pERK) but failed to suppress phosphorylated AKT (pAKT) and in some instances increased pAKT levels. Conversely, Omipalisib alone successfully inhibited pAKT but failed to suppress pERK. Therefore, we hypothesized that a combination therapeutic comprised of Omipalisib with either Trametinib or SHP099 would inhibit two prominent mitogenic pathways, MEK and PI3K-AKT, to more effectively suppress pancreatic cancer. In vitro studies demonstrated that both Omipalisib/Trametinib and Omipalisib/SHP099 combination therapeutic strategies were generally more effective than treatment with each drug individually at reducing proliferation, colony formation, and cell migration compared to vehicle controls. Additionally, we found that while combination Omipalisib/SHP099 treatment reduced implanted tumor growth in vivo , the Omipalisib/Trametinib treatment was significantly more effective. Therefore, we additionally tested the Omipalisib/Trametinib combination therapeutic in the highly aggressive PKT (Ptf1a cre , LSL-Kras G12D , TGFbR2 fl/fl ) spontaneous mouse model of PDAC. We subsequently found that PKT mice treated with the Omipalisib/Trametinib combination therapeutic survived significantly longer than mice treated with either drug alone, and more than doubled the mean survival time of vehicle control mice. Altogether, our data support the importance of a dual treatment strategy targeting both MAPK and PI3K-AKT pathways.
Insights
Targeting both MAPK and PI3K-AKT pathways with Omipalisib and Trametinib significantly improves survival in pancreatic cancer models. This dual therapeutic strategy offers a promising approach for pancreatic ductal adenocarcinoma (PDAC) treatment.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Pancreatic ductal adenocarcinoma (PDAC) is characterized by KRAS mutations, leading to resistance against single-pathway targeted therapies.
- Existing treatments targeting KRAS or MAPK pathway effectors show limited success due to drug resistance and activation of alternative pathways like PI3K-AKT.
Purpose of the Study:
- To evaluate the efficacy of dual-targeting therapies combining Omipalisib (PI3K-AKT inhibitor) with Trametinib (MEK inhibitor) or SHP099 (SHP2 inhibitor) in PDAC.
- To investigate the synergistic effects of inhibiting both MAPK and PI3K-AKT signaling pathways in PDAC progression.
Main Methods:
- In vitro studies assessed cell proliferation, colony formation, and migration using combination therapies (Omipalisib/Trametinib, Omipalisib/SHP099).
- In vivo studies evaluated tumor growth in a mouse model with Omipalisib/SHP099 and Omipalisib/Trametinib.
- The efficacy of Omipalisib/Trametinib was further tested in a spontaneous PDAC mouse model (PKT).
Main Results:
- Single-agent therapies partially inhibited ERK or AKT phosphorylation, with some agents increasing compensatory pathway activity.
- Combination therapies (Omipalisib/Trametinib and Omipalisib/SHP099) demonstrated superior efficacy in reducing PDAC cell proliferation, colony formation, and migration in vitro.
- Omipalisib/Trametinib showed significantly greater efficacy in reducing tumor growth in vivo compared to Omipalisib/SHP099.
- In the PKT mouse model, Omipalisib/Trametinib combination therapy significantly prolonged survival, more than doubling the mean survival time compared to controls.
Conclusions:
- Targeting both MAPK and PI3K-AKT pathways simultaneously is crucial for effective PDAC treatment.
- The combination of Omipalisib and Trametinib represents a potent therapeutic strategy for pancreatic cancer, demonstrating significant survival benefits in preclinical models.
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